228 resultados para trailer


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Bridge structures are continuously subject to degradation due to the environment, ageing and excess loading. Periodic monitoring of bridges is therefore a key part of any maintenance strategy as it can give early warning if a bridge becomes unsafe. This article investigates an alternative method for the monitoring of bridge dynamic behaviour: a truck-trailer vehicle system, with accelerometers fitted to the axles of the trailer. The method aims to detect changes in the damping of a bridge, which may indicate the existence of damage. A simplified vehicle-bridge interaction model is used in theoretical simulations to assess the effectiveness of the method in detecting those changes. The influence of road profile roughness on the vehicle vibration is overcome by recording accelerations from both axles of a trailer and then analysing the spectra of the difference in the accelerations between the two axles. The effectiveness of the approach in detecting damage simulated as a loss in stiffness is also investigated. In addition, the sensitivity of the approach to the vehicle speed, road roughness class, bridge span length, changes in the equal axle properties and noise is investigated.

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The evolution of new technology and its increasing use, have for some years been making the existence of informal learning more and more transparent, especially among young and older adults in both Higher Education and workplace contexts. However, the nature of formal and non-formal, course-based, approaches to learning has made it hard to accommodate these informal processes satisfactorily, and although technology bring us near to the solution, it has not yet achieved. TRAILER project aims to address this problem by developing a tool for the management of competences and skills acquired through informal learning experiences, both from the perspective of the user and the institution or company. This paper describes the research and development main lines of this project.

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Memoria de investigación (Universidade de Vigo-Universidade da Coruña, 2010). Incluye anexos. Índice de los vídeos utilizados con hipervínculos: p. 126-131. Resumen basado en el de la publicación

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Secas extremas, inundações, furacões, pessoas que perderam suas casas, suas plantações, seus animais, sua fé. Essa é a realidade enfrentada por brasileiros em diversas regiões do País. A causa? As mudanças do clima. Apesar de muita gente ainda achar que aquecimento global é coisa de cinema ou que só acontecerá daqui a muitas gerações, o documentário do Greenpeace "Mudanças do Clima, Mudanças de Vidas" mostra que tudo isso já é, infelizmente, uma realidade. Confira ao lado o filme e clique no menu acima para adquirir a sua cópia

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Vídeo componente do jogo “Musikinésia (http://www.loa.sead.ufscar.br/musikinesia.php)” desenvolvido pela equipe do Laboratório de Objetos de Aprendizagem da Universidade Federal de São Carlos (LOA/UFSCar).

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This final project intends to discourse about the cinematographic publicity piece that is the trailer and its main features. Its relation with the publicity is studied so we can understand how this relation occurs, once the trailer is found in between the cinema and the publicity. The trailer features are exposed, such as the persuasive features, so it becomes evident the importance of studying this advertising tool from a broad perspective. In addition, we seek to determine its aesthetics, its compositional characteristics and their relevance in movie marketing. The paper discusses briefly about the universe of the movie marketing, as a way of situating the trailer as a tool in a set of publicity techniques that help in selling movies. A case study is conducted, involving the analysis of 5 trailers from different categories of gender, in order to capture the essence of the overall trailer, such from the persuasive perspective as the audiovisual perspective. Finally the is the addition of a current universe of characteristics that can be found in the contemporary trailers, grounded by theorists and film scholars that accompanied the evolution of this advertising tool

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La mejora del comportamiento aerodinámico de vehículos pesados en la carretera ha adquirido una mayor importancia estos últimos años debido a la crisis y su consecuente aumento del precio de los combustibles. Dado que una reducción en la resistencia aerodinámica del vehículo conlleva un menor empleo de combustible, el objetivo de este proyecto es realizar un estudio paramétrico del conjunto tractor-tráiler mediante la mecánica de fluidos computacional (CFD) para así obtener la geometría que proporciona un menor gasto de combustible cuando ésta es expuesta a viento frontal. La influencia de 3 parámetros, que son la separación existente entre cabina y remolque, la altura del remolque y el radio de curvatura de las aristas frontales de la cabina, es analizada en este estudio dividido en varias etapas que implican el uso de programas específicos como son: la parametrización y creación de las geometrías en 3D que es llevada a cabo mediante CATIA, el mallado del dominio (realizado con Gambit) y resolución de las ecuaciones mediante FLUENT. Finalmente se obtendrá una relación entre la resistencia aerodinámica (representada mediante el coeficiente de arrastre) y la combinación de los 3 parámetros, que nos permitirá decidir que geometría es la óptima. Abstract The improvement of the heavy vehicle’s aerodynamic behavior on the road has gained a great importance for these last years because of the economic crisis and the consequent increase of the price of the fuels. Due to the fact that a reduction in the aerodynamic resistance of the vehicle involves using a smaller amount of fuel, the objective of this project is to carry out a parametric study about the ensemble tractor-trailer by computational fluid dynamics methods (CFD) in order to obtain the geometry which expense of fuel is the lowest when it’s exposed to frontal wind. The influence of the three parameters, which are the space between cab and trailer, the height of the trailer and the curvature of the frontal cab edges, is analysed in this study which is divided into different parts involving specific programs: choosing the parameters and building the geometries, which is done by using CATIA, the mesh is built by Gambit, and the program equations-solver is FLUENT. Finally a ratio between aerodynamic resistance and a combination of the three parameters will be obtained and it will allow us to choose the best geometry.

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Mode of access: Internet.

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Federal Highway Administration, Washington, D.C.

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National Highway Traffic Safety Administration, Office of Passenger Vehicle Research, Washington, D.C.

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National Highway Traffic Safety Administration, Office of Passenger Vehicle Research, Washington, D.C.